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Metal Forming : Fundamentals and Applications

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TLDR
In this paper, the basic principles of metal forming are discussed, as well as significant practical variables of metal-forming processes such as friction, temperatures and forming machines and their characteristics.
Abstract
Briefly reviews the basic principles of metal forming but major emphasis is on the latest developments in the design of metal-forming operations and tooling. Discusses the position of metal forming in manufacturing and considers a metal-forming process as a system consisting of several interacting variables. Includes an overall review and classification of all metal-forming processes. The fundamentals of plastic deformation - metal flow, flow stress of metals and yield criteria - are discussed, as are significant practical variables of metal- forming processes such as friction, temperatures and forming machines and their characteristics. Examines approximate methods of analyzing simple forming operations, then looks at massive forming processes such as closed-die forging, hot extrusion, cold forging/ extrusion, rolling and drawing (discussion includes the prediction of stresses and load in each process and applications of computer-aided techniques). Recent developments in metal-forming technology, including CAD/CAM for die design and manufacture, are discussed, and a review of the latest trends in metal flow analysis and simulations.

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Metal Forming and the Finite-Element Method

TL;DR: In this paper, the finite element method was used to analyze the metal forming process and its properties, including plasticity, viscoplasticity, and plane-strain problems.
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Boundary layer flow of a nanofluid past a stretching sheet with a convective boundary condition

TL;DR: In this article, the boundary layer flow induced in a nanofluid due to a linearly stretching sheet is studied numerically and the transport equations include the effects of Brownian motion and thermophoresis.
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On thermal boundary layer on a power-law stretched surface with suction or injection

TL;DR: In this article, similar solutions of the laminar boundary-layer equations describing heat and flow in a quiescent fluid driven by a stretched surface subject to suction or injection are obtained.
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Closed-form exact solutions of MHD viscous flow over a shrinking sheet

TL;DR: In this article, the magnetohydrodynamic (MHD) flow over a shrinking sheet is solved analytically in a closed-form equation and is an exact solution of the full governing Navier-Stokes equations for the problem.
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Slip MHD viscous flow over a stretching sheet - An exact solution

TL;DR: In this article, the effect of the slip, the magnetic, and the mass transfer parameters on MHD flow under slip condition over a permeable stretching surface is solved analytically.
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